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Cellular Lipid Composition Affects Sensitivity of Plant Pathogens to Fengycin, an Antifungal Compound Produced by
Abstract:
Fengycin is an antimicrobial cyclic lipopeptide produced by various Bacillus subtilis strains, including strain CU12. Direct effects of fengycin include membrane pore formation and efflux of cellular contents leading to cell death in sensitive microorganisms. In this study, four plant pathogens were studied in order to elucidate the role of membrane lipids in their relative sensitivity to fengycin. Inhibition of mycelial growth in these pathogens varied considerably. Analysis of membrane lipids in these microorganisms indicated that sensitivity correlated with low ergosterol content and shorter phospholipid fatty acyl chains. Sensitivity to fengycin also correlated with a lower anionic/zwitterionic phospholipid ratio. Our data suggest that decreased fluidity buffering capacity, as a result of low ergosterol content, and higher intrinsic fluidity afforded by short fatty acyl chain length may increase the sensitivity of microbial membranes to fengycin. Our results also suggest that lower content in anionic phospholipids may increase fengycin insertion into the membrane through reduced electrostatic repulsion with the negatively charged fengycin. The intrinsic membrane lipid composition may contribute, in part, to the observed level of antimicrobial activity of fengycin in various plant pathogens.
Insights
Fengycin
Area of Science:
- Microbiology and Plant Pathology
Background:
- Fengycin is an antimicrobial cyclic lipopeptide from Bacillus subtilis.
- It causes cell death by forming pores and releasing cellular contents.
Purpose of the Study:
- To investigate the role of membrane lipids in plant pathogen sensitivity to fengycin.
- To correlate membrane lipid composition with fengycin's antimicrobial activity.
Main Methods:
- Studied four plant pathogens for their response to fengycin.
- Analyzed the membrane lipid composition of these pathogens.
Main Results:
- Fengycin sensitivity varied significantly among pathogens.
- Sensitivity correlated with low ergosterol, shorter fatty acyl chains, and lower anionic phospholipid content.
- These factors may increase fengycin's membrane insertion and activity.
Conclusions:
- Intrinsic membrane lipid composition is a key factor in plant pathogen sensitivity to fengycin.
- Understanding these lipid properties can help predict and enhance fengycin's efficacy.
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